The effect of mutations in individual proteins on protein homeostasis, or “proteostasis,” can in principle depend on the mutations\u27 effects on the thermodynamics or kinetics of folding, or both. Here, we explore this issue using a computational model of in vivo protein folding that we call FoldEcoSlim. Our model predicts that kinetic versus thermodynamic control of mutational effects on proteostasis hinges on the relationship between how fast a protein\u27s folding reaction reaches equilibrium and a critical time scale that characterizes the lifetime of a protein in its environment: for rapidly dividing bacteria, this time scale is that of cell division; for proteins that are produced in heterologous expression systems, this time scale i...
Although molecular chaperones are essential components of protein homeostatic machinery, their mecha...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
Fitness effects of mutations fall on a continuum ranging from lethal to deleterious to beneficial. T...
In this article we use mutation studies as a benchmark for a minimal model of the folding process ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
How heterogeneous are proteome folding timescales and what physical principles, if any, dictate its ...
The consistent observation across all kingdoms of life that highly abundant proteins evolve slowly d...
The properties of biomolecules depend both on physics and on the evolutionary process that formed th...
<div><p>How heterogeneous are proteome folding timescales and what physical principles, if any, dict...
The properties of biomolecules depend both on physics and on the evolutionary process that formed th...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
Motivation: This study presents a novel investigation of the effect of kinetic control on cotranslat...
Motivation: This study presents a novel investigation of the effect of kinetic control on cotranslat...
Although molecular chaperones are essential components of protein homeostatic machinery, their mecha...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
BackgroundRecent data have suggested two principles that are central to the work we describe here. F...
Fitness effects of mutations fall on a continuum ranging from lethal to deleterious to beneficial. T...
In this article we use mutation studies as a benchmark for a minimal model of the folding process ...
The physics of self-organization and complexity is manifested on a variety of biological scales, fro...
How heterogeneous are proteome folding timescales and what physical principles, if any, dictate its ...
The consistent observation across all kingdoms of life that highly abundant proteins evolve slowly d...
The properties of biomolecules depend both on physics and on the evolutionary process that formed th...
<div><p>How heterogeneous are proteome folding timescales and what physical principles, if any, dict...
The properties of biomolecules depend both on physics and on the evolutionary process that formed th...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...
Motivation: This study presents a novel investigation of the effect of kinetic control on cotranslat...
Motivation: This study presents a novel investigation of the effect of kinetic control on cotranslat...
Although molecular chaperones are essential components of protein homeostatic machinery, their mecha...
By balancing the average energy gap with its typical change due to mutations for proteinlike heterop...
Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genom...